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Fault Current Limiting Capabilities of Thyristor Controlled Rectifier and Modular Multilevel Converter for MVDC based Shipboard Power Systems

机译:基于MVDC的舰载电力系统的晶闸管控制整流器和模块化多电平转换器的故障限流能力

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In order to achieve the goals of survivability, efficiency, power density, and reliability for Shipboard Power System (SPS), Medium Voltage Direct Current (MVDC) systems require an appropriate converter topology in the power generation module to handle the rail-to-rail fault currents. Thyristor based rectifiers are an attractive choice for high current ratings of thyristors along with high surge current capability. Additionally, IGBT-based rectifiers such as Modular Multilevel Converter (MMC) are also becoming popular for handling fault current in MVDC systems. This work focuses on the application of twelve pulse Thyristor Controlled Rectifier (TCR) and an MMC with current limiting functions which can minimize the rectifier output current temporarily in case of rail-to-rail faults. A comparative study and simulation in a real-time environment have been carried out to understand their fault response that can help choosing the appropriate topology, which will ultimately benefit the MVDC breaker-less architectures in All Electric Ships (AES).
机译:为了实现船上电力系统(SPS)的可生存性,效率,功率密度和可靠性的目标,中压直流电(MVDC)系统需要在发电模块中使用合适的转换器拓扑结构来处理轨到轨故障电流。基于晶闸管的整流器是晶闸管的高额定电流以及高浪涌电流能力的诱人选择。此外,基于IGBT的整流器(例如模块化多电平转换器(MMC))也已变得越来越流行,用于处理MVDC系统中的故障电流。这项工作的重点是十二脉冲晶闸管控制整流器(TCR)和具有限流功能的MMC的应用,这些功能可以在发生轨对轨故障时暂时将整流器输出电流降至最低。已经进行了实时环境中的比较研究和仿真,以了解它们的故障响应,这些故障响应可以帮助选择适当的拓扑,这最终将使所有电力船(AES)的MVDC无断路器架构受益。

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